Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings

The response of a statically misaligned flexible rotor mounted in active magnetic bearings is numerically investigated in this work. The mathematical model of the rotor-bearing system incorporates nonlinearity due to the geometric coupling of the magnetic actuators as well as that arising from the m...

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Main Author: Inayat-Hussain, J.I.
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Published: 2017
Online Access:http://dspace.uniten.edu.my/jspui/handle/123456789/6484
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spelling my.uniten.dspace-64842018-04-28T16:41:53Z Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings Inayat-Hussain, J.I. The response of a statically misaligned flexible rotor mounted in active magnetic bearings is numerically investigated in this work. The mathematical model of the rotor-bearing system incorporates nonlinearity due to the geometric coupling of the magnetic actuators as well as that arising from the magnetic actuator forces that are nonlinear function of the coil current and the air gap between the rotor and the stator. The influence of the rotor's static misalignment, represented by the gravity parameter, W, on its response was found to be dependent on the magnitude of the geometric coupling parameter, α. Numerical results showed that for α = 0, the response of the rotor was always synchronous regardless of the values of W. For moderate values of α, nonsynchronous vibration was seen in the response of the rotor for the case of W ≠ 0. For large values of α, nonsynchronous vibration was observed in the response of the rotor irrespective of the values of W. For the values of design and operating parameters of the rotor-bearing system investigated in this work, the response of the rotor displayed a rich variety of nonlinear dynamical phenomena including sub-synchronous vibrations of period-2, -3, -4, -6, -8, -12, -14 and -16, quasi-periodicity and chaos. Numerical results further revealed the existence of multiple attractors within certain ranges of the speed parameter, Ω. Co-existence of attractors has serious implications on the safe operation of magnetically supported rotating machinery as synchronous response of the rotor may become nonsynchronous or even chaotic when excited by external forces that cause the rotor's position to move from one basin of attraction to another. © 2009 Elsevier B.V. All rights reserved. 2017-12-08T09:46:08Z 2017-12-08T09:46:08Z 2010 http://dspace.uniten.edu.my/jspui/handle/123456789/6484
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description The response of a statically misaligned flexible rotor mounted in active magnetic bearings is numerically investigated in this work. The mathematical model of the rotor-bearing system incorporates nonlinearity due to the geometric coupling of the magnetic actuators as well as that arising from the magnetic actuator forces that are nonlinear function of the coil current and the air gap between the rotor and the stator. The influence of the rotor's static misalignment, represented by the gravity parameter, W, on its response was found to be dependent on the magnitude of the geometric coupling parameter, α. Numerical results showed that for α = 0, the response of the rotor was always synchronous regardless of the values of W. For moderate values of α, nonsynchronous vibration was seen in the response of the rotor for the case of W ≠ 0. For large values of α, nonsynchronous vibration was observed in the response of the rotor irrespective of the values of W. For the values of design and operating parameters of the rotor-bearing system investigated in this work, the response of the rotor displayed a rich variety of nonlinear dynamical phenomena including sub-synchronous vibrations of period-2, -3, -4, -6, -8, -12, -14 and -16, quasi-periodicity and chaos. Numerical results further revealed the existence of multiple attractors within certain ranges of the speed parameter, Ω. Co-existence of attractors has serious implications on the safe operation of magnetically supported rotating machinery as synchronous response of the rotor may become nonsynchronous or even chaotic when excited by external forces that cause the rotor's position to move from one basin of attraction to another. © 2009 Elsevier B.V. All rights reserved.
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author Inayat-Hussain, J.I.
spellingShingle Inayat-Hussain, J.I.
Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
author_facet Inayat-Hussain, J.I.
author_sort Inayat-Hussain, J.I.
title Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
title_short Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
title_full Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
title_fullStr Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
title_full_unstemmed Nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
title_sort nonlinear dynamics of a statically misaligned flexible rotor in active magnetic bearings
publishDate 2017
url http://dspace.uniten.edu.my/jspui/handle/123456789/6484
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score 13.160551